4,107 research outputs found
Grain boundary engineering of mechanical strength of silicon nitride (Si3N4)
The technical control of grain boundaries of sintered Si3N4 in relation to its mechanical strength is described with special emphasis on the Si3N4-Y2O3-Al2O3 system
Formulation and closure of compressible turbulence equations in the light of kinetic theory
Fluid-dynamic moment equations, based on a kinetic hierarchy system, are derived governing the interaction between turbulent and thermal fluctuations. The kinetic theory is shown to reduce the inherent complexity of the conventional formalism of compressible turbulence theory and to minimize arbitrariness in formulating the closure condition
Effects of various additives on sintering of aluminum nitride
Effects of thirty additives on sintering A/N were investigated. The addition of alkali earth oxides and rare earth oxides gave fully densified aluminum nitride. This is due to the formation of nitrogen-containing aluminate liquid in the system aluminum nitride-alkali earth oxides or rare earth oxides. Microstructural studies of the sintered specimens with the above two types of additives suggested that the densification was due to the liquid phase sintering. Additions of silicon compounds resulted in poor densification by the formation of highly refractory compounds such as A/N polytypes
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